CONNECTING ASSEMBLY AND RELATED ELECTRONIC APPARATUS
20250087937 ยท 2025-03-13
Assignee
Inventors
Cpc classification
H01R13/5219
ELECTRICITY
International classification
Abstract
A connecting assembly for aligning and connecting a first electronic device and a second electronic device is provided. The connecting assembly includes a first connecting component, a second connecting component, a pin, a resilient component and a locking component. The first connecting component is disposed on the first electronic device. The second connecting component is disposed on the second electronic device. The pin protrudes from the first connecting component and is configured to be inserted into the second connecting component along a first direction. The resilient component is disposed inside the second connecting component and configured to apply a radial resilient force onto the pin inserted into the second connecting component. The locking component is screwed onto the second connecting component and configured to apply a radial locking force onto the pin inserted into the second connecting component. Besides, a related electronic apparatus is also provided.
Claims
1. A connecting assembly for aligning and connecting a first electronic device and a second electronic device, the connecting assembly comprising: a first connecting component disposed on the first electronic device; a second connecting component disposed on the second electronic device; a pin protruding from the first connecting component and configured to be inserted into the second connecting component along a first direction; a resilient component disposed inside the second connecting component and configured to apply a radial resilient force onto the pin inserted into the second connecting component; and a locking component screwed onto the second connecting component and configured to apply a radial locking force onto the pin inserted into the second connecting component.
2. The connecting assembly of claim 1, further comprising an abutting component disposed inside the second connecting component and configured to abut against the pin, and the resilient component abutting against the abutting component to indirectly apply the radial resilient force onto the pin via the abutting component.
3. The connecting assembly of claim 2, wherein a groove is formed on the pin and configured to cooperate with the abutting component and the locking component, and the groove is formed on an outer periphery of the pin along a circumferential direction.
4. The connecting assembly of claim 3, further comprising a sealing component disposed between the first connecting component and the second connecting component, and when the locking component is screwed onto the second connecting component, a cooperation of the locking component and the groove driving the pin to move from an initial inserting position to a predetermined inserting position along the first direction for driving the first connecting component to move along the first direction together with the pin, such that the sealing component is clamped and resiliently deformed by the first connecting component and the second connecting component.
5. The connecting assembly of claim 2, wherein the abutting component is a ball-shaped structure or a protruding platform structure, the locking component is a screw or a bolt, and the resilient component is a compression spring.
6. The connecting assembly of claim 1, wherein the resilient component abuts against the pin to directly apply the radial resilient force onto the pin.
7. The connecting assembly of claim 6, wherein a first groove and a second groove are formed on the pin and configured to cooperate with the resilient component and the locking component, respectively.
8. The connecting assembly of claim 7, further comprising a sealing component disposed between the first connecting component and the second connecting component, when the locking component is screwed onto the second connecting component, a cooperation of the locking component and the second groove driving the pin to move from an initial inserting position to a predetermined inserting position along the first direction for driving the first connecting component to move along the first direction together with the pin, such that the sealing component is clamped and resiliently deformed by the first connecting component and the second connecting component.
9. The connecting assembly of claim 6, wherein the resilient component is a U-shaped spring, and the locking component is a screw or a bolt.
10. The connecting assembly of claim 1, further comprising a sealing component disposed between the first connecting component and the second connecting component, when the locking component is screwed onto the second connecting component, a cooperation of the locking component and the pin driving the pin to move from an initial inserting position to a predetermined inserting position along the first direction for driving the first connecting component to move along the first direction together with the pin, such that the sealing component is clamped and resiliently deformed by the first connecting component and the second connecting component.
11. An electronic apparatus comprising: a first electronic device; a second electronic device detachably connected to the first electronic device; and a connecting assembly for aligning and connecting the first electronic device and the second electronic device, the connecting assembly comprising: a first connecting component disposed on the first electronic device; a second connecting component disposed on the second electronic device; a pin protruding from the first connecting component and configured to be inserted into the second connecting component along a first direction; a resilient component disposed inside the second connecting component and configured to apply a radial resilient force onto the pin inserted into the second connecting component; and a locking component screwed onto the second connecting component and configured to apply a radial locking force onto the pin inserted into the second connecting component.
12. The electronic apparatus of claim 11, wherein the connecting assembly further comprises an abutting component disposed inside the second connecting component and configured to abut against the pin, and the resilient component abuts against the abutting component to indirectly apply the radial resilient force onto the pin via the abutting component.
13. The electronic apparatus of claim 12, wherein a groove is formed on the pin and configured to cooperate with the abutting component and the locking component, and the groove is formed on an outer periphery of the pin along a circumferential direction.
14. The electronic apparatus of claim 13, wherein the connecting assembly further comprises a sealing component disposed between the first connecting component and the second connecting component, and when the locking component is screwed onto the second connecting component, a cooperation of the locking component and the groove drives the pin to move from an initial inserting position to a predetermined inserting position along the first direction for driving the first connecting component to move along the first direction together with the pin, such that the sealing component is clamped and resiliently deformed by the first connecting component and the second connecting component.
15. The electronic apparatus of claim 12, wherein the abutting component is a ball-shaped structure or a protruding platform structure, the locking component is a screw or a bolt, and the resilient component is a compression spring.
16. The electronic apparatus of claim 11, wherein the resilient component abuts against the pin to directly apply the radial resilient force onto the pin.
17. The electronic apparatus of claim 16, wherein a first groove and a second groove are formed on the pin and configured to cooperate with the resilient component and the locking component, respectively.
18. The electronic apparatus of claim 17, wherein the connecting assembly further comprises a sealing component disposed between the first connecting component and the second connecting component, when the locking component is screwed onto the second connecting component, a cooperation of the locking component and the second groove drives the pin to move from an initial inserting position to a predetermined inserting position along the first direction for driving the first connecting component to move along the first direction together with the pin, such that the sealing component is clamped and resiliently deformed by the first connecting component and the second connecting component.
19. The electronic apparatus of claim 16, wherein the resilient component is a U-shaped spring, and the locking component is a screw or a bolt.
20. The electronic apparatus of claim 11, wherein the connecting assembly further comprises a sealing component disposed between the first connecting component and the second connecting component, when the locking component is screwed onto the second connecting component, a cooperation of the locking component and the pin drives the pin to move from an initial inserting position to a predetermined inserting position along the first direction for driving the first connecting component to move along the first direction together with the pin, such that the sealing component is clamped and resiliently deformed by the first connecting component and the second connecting component.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0029] In the following detailed description of the preferred embodiments, reference is made to the accompanying drawings which form a part hereof, and in which is shown by way of illustration specific embodiments in which the invention may be practiced. In this regard, directional terminology, such as top, bottom, left, right, front, back, etc., is used with reference to the orientation of the Figure(s) being described. The components of the present invention can be positioned in a number of different orientations. As such, the directional terminology is used for purposes of illustration and is in no way limiting. Accordingly, the drawings and descriptions will be regarded as illustrative in nature and not as restrictive. Also, if not specified, the term connect is intended to mean either an indirect or direct electrical/mechanical connection. Thus, if a first device is connected to a second device, that connection may be through a direct electrical/mechanical connection, or through an indirect electrical/mechanical connection via other devices and connections.
[0030] Please refer to
[0031] As shown in
[0032] In this embodiment, as shown in
[0033] Besides, in this embodiment, the locking component 135 can be a screw or a bolt, and the resilient component 134 can be a compression spring. However, the present invention is not limited to this embodiment.
[0034] Understandably, the numbers of the pin, the resilient component and the locking component are not limited to this embodiment. For example, in another embodiment, the connecting assembly can only include one pin, one resilient component and one locking component.
[0035] As shown in
[0036] In this embodiment, the abutting component 136 can be a ball-shaped structure made of metal material. However, the present invention is not limited to this embodiment.
[0037] Please refer to
[0038] In addition, the connecting assembly 13 further includes a sealing component 137 disposed between the first connecting component 131 and the second connecting component 132. The sealing component 137 can be made of resilient material. The sealing component 137 can position the pin 133 at an initial inserting position as shown in
[0039] In this embodiment, the sealing component 137 can be an O-shaped sealing ring surrounding an electrical connector of the first electronic device 11 and an electrical connector of the second electronic device 12. However, the present invention is not limited to this embodiment.
[0040] Understandably, in another embodiment, if there is no demand for dustproof and waterproof functions, the sealing component can be omitted. Furthermore, the pin can be configured to be located at the predetermined inserting position when being inserted into the second connecting component, and the locking component can be configured to lock the pin located at the predetermined inserting position after insertion of the pin into the second connecting component.
[0041] Please refer to
[0042] Other details of the second embodiment are the same as the ones of the first embodiment. Detailed description is omitted herein for simplicity.
[0043] Please refer to
[0044] Other details of the third embodiment are the same as the ones of the first embodiment. Detailed description is omitted herein for simplicity.
[0045] In contrast to the prior art, the present invention can lock the pin with the radial resilient force generated by the resilient component and the radial locking force generated by the locking component for ensuring the first electronic device and the second electronic device to be aligned and connected to each other stably and firmly when the pin is inserted into the second connecting component and the locking component is screwed onto the second connecting component. Therefore, the present: invention has advantages of simple structure and easy operation.
[0046] Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.